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Numerical simulation of the integral hydro-bulge forming of non-clearance double-layer spherical vessels: deformation analysis

机译:非间隙双层球形容器整体水力凸起成形的数值模拟:变形分析

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The integral hydro-bulge forming (IHBF) process of non-clearance double-layer sperical vessels is analyzed by means of the explicit finite element code LS-DYNA3D. The deformation process of the double-layer shell from the initially flat-blank frustum shell to the final spherical shape is discussed, the final diameter and its variations, the development of the contact situation and the thickness distribution are fully analyzed. The numerical results agree well with the experimental results. During hydro-bulging, the inner shell is firstly deformed and then the outer shell begins deformation under the contract pressure from the inner shell, the two layer shells contact gradually each other, at the end of the process the tow layers completely contact and are deformed into spherical shapes. The thinning is higher near every blank centre, lower at every blank edge and blank corner. The corners can be deformed into spherical shapes with appropriate deformation.
机译:借助显式有限元代码LS-DYNA3D分析了非间隙双层精囊的整体水突形成(IHBF)过程。讨论了双层壳从最初的平截头圆锥体壳到最终球形的变形过程,并分析了最终直径及其变化,接触情况的发展以及厚度分布。数值结果与实验结果吻合良好。在水力膨胀过程中,内壳首先变形,然后外壳在来自内壳的收缩压力下开始变形,两层壳逐渐彼此接触,在此过程结束时,两层丝束完全接触并变形变成球形。每个空白中心附近的细化程度更高,每个空白边缘和空白角的细化程度更低。角可以适当变形地变形为球形。

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